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Fatigue study on the actuation performance of macro fiber composite (MFC): theoretical and experimental approach

机译:宏观纤维复合材料致动性能的疲劳研究(MFC):理论与实验方法

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摘要

Macro fiber composite (MFC) is extensively used in vibration control and actuation applications due to its high flexibility and enhanced coupling coefficients. During these applications, MFCs are subjected to the continuous cyclic electrical loading, which may lead to the degradation in its actuation performance. In order to predict the life cycle of MFCs, an experimental setup has been devised and experiments are performed under cyclic loading condition. Efforts involved in the experiments are huge in terms of time and cost. Hence, an attempt has been made to develop a theoretical model to predict the fatigue behavior of MFCs. A nonlinear finite element method has been formulated based on Kirchhoff plate theory wherein the fatigue failure criterion based on strain energy is embedded. Simulated results based on the proposed model is compared with experimental observation and are in good agreement with each other. Variation in the life cycle of MFCs are also studied for different operating temperatures as well as structural/geometric configurations.
机译:由于其高柔韧性和增强的耦合系数,宏观纤维复合材料(MFC)广泛用于振动控制和致动应用。在这些应用期间,MFC经受连续的循环电荷,这可能导致其致动性能的降解。为了预测MFC的生命周期,已经设计了实验设置,并且在循环负载条件下进行实验。在实验中涉及的努力在时间和成本方面都是巨大的。因此,已经尝试开发理论模型以预测MFCs的疲劳行为。已经基于基于Kirchhoff板理论制定了非线性有限元方法,其中嵌入了基于应变能量的疲劳失效标准。基于所提出的模型的模拟结果与实验观察相比,彼此吻合良好。还研究了MFC的生命周期的变化,用于不同的操作温度以及结构/几何配置。

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